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Dynamics of Phononic Materials and Structures: Historical Origins, Recent Progress, and Future Outlook

机译:声子材料和结构的动力学:历史渊源,最新进展和未来展望

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The study of phononic materials and structures is an emerging discipline that lies at the crossroads of vibration and acoustics engineering and condensed matter physics. Broadly speaking, a phononic medium is a material or structural system that usually exhibits some form of periodicity, which can be in the constituent material phases, or the internal geometry, or even the boundary conditions. As such, its overall dynamical characteristics are compactly described by a frequency band structure, in analogy to an electronic band diagram. With roots extended to early studies of periodic systems by Newton and Rayleigh, the field has grown to encompass engineering configurations ranging from trusses and ribbed shells to phononic crystals and metamaterials. While applied research in this area has been abundant in recent years, treatment from a fundamental mechanics perspective, and particularly from the standpoint of dynamical systems, is needed to advance the field in new directions. For example, techniques already developed for the incorporation of damping and nonlinearities have recently been applied to wave propagation in phononic materials and structures. Similarly, numerical and experimental approaches originally developed for the characterization of conventional materials and structures are now being employed toward better understanding and exploitation of phononic systems. This article starts with an overview of historical developments and follows with an in-depth literature and technical review of recent progress in the field with special consideration given to aspects pertaining to the fundamentals of dynamics, vibrations, and acoustics. Finally, an outlook is projected onto the future on the basis of the current trajectories of the field.
机译:声子材料和结构的研究是一门新兴学科,它处于振动和声学工程与凝聚态物理的交汇处。广义上讲,声子介质是通常表现出某种形式的周期性的材料或结构系统,该周期性可以处于组成材料的相,内部几何形状,甚至边界条件中。这样,其总体动态特性由频带结构紧凑地描述,类似于电子频带图。牛顿和瑞利将其根源扩展到对周期系统的早期研究,该领域已发展为涵盖从桁架和肋壳到声子晶体和超材料的工程组态。尽管近年来在该领域的应用研究非常丰富,但仍需要从基本力学的角度,特别是从动力学系统的角度进行处理,以使该领域朝新的方向发展。例如,已经开发出的用于吸收阻尼和非线性的技术最近已应用于声子材料和结构中的波传播。同样,最初为表征常规材料和结构而开发的数值和实验方法现在正用于更好地理解和利用声子系统。本文首先概述了历史发展,随后是对该领域最新进展的深入文献和技术综述,并特别考虑了与动力学,振动和声学基本原理有关的方面。最后,根据该领域的当前轨迹,对未来进行展望。

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